Abstract
AbstractThe COVID-19 pandemic continues to have a devastating impact on health systems and economies across the globe. Implementing public health measures in tandem with effective vaccination strategies have been instrumental in curtailing the burden of the pandemic. With the three vaccines authorized for use in the U.S. having varying efficacies and waning effects against major COVID-19 strains, understanding the impact of these vaccines on COVID-19 incidence and fatalities is critical. Here, we formulate and use mathematical models to assess the impact of vaccine type, vaccination and booster uptake, and waning of natural and vaccine-induced immunity on the incidence and fatalities of COVID-19 and to predict future trends of the disease in the U.S. when existing control measures are reinforced or relaxed. Results of the study show a 5, 1.8, and 2 times reduction in the reproduction number during the period in which vaccination, first booster, and second booster uptake started, respectively, compared to the previous period. Due to waning of vaccine-induced immunity, vaccinating up to 96% of the U.S. population might be required to attain herd immunity, if booster uptake is low. Additionally, vaccinating and boosting more people from the onset of vaccination and booster uptake, especially with mRNA vaccines (which confer superior protection than the Johnson & Johnson vaccine) would have led to a significant reduction in COVID-19 cases and deaths in the U.S. Furthermore, adopting natural immunity-boosting measures is important in fighting COVID-19 and transmission rate reduction measures such as mask-use are critical in combating COVID-19. The emergence of a more transmissible COVID-19 variant, or early relaxation of existing control measures can lead to a more devastating wave, especially if transmission rate reduction measures and vaccination are relaxed simultaneously, while chances of containing the pandemic are enhanced if both vaccination and transmission rate reduction measures are reinforced simultaneously. We conclude that maintaining or improving existing control measures and boosting with mRNA vaccines are critical in curtailing the burden of the pandemic in the U.S.
Publisher
Cold Spring Harbor Laboratory
Reference109 articles.
1. A Novel Coronavirus from Patients with Pneumonia in China, 2019;New England Journal of Medicine [Internet],2020
2. WHO declares COVID-19 a pandemic [Internet];Acta Biomedica. Acta Biomed,2020
3. Shim E. Projecting the impact of sars-cov-2 variants and the vaccination program on the fourth wave of the covid-19 pandemic in south korea. International Journal of Environmental Research and Public Health [Internet]. 2021 Jul 2 [cited 2021 Nov 6];18(14). Available from: https://pubmed.ncbi.nlm.nih.gov/34300029/
4. COVID-19 vaccines: Comparison of biological, pharmacological characteristics and adverse effects of pfizer/BioNTech and moderna vaccines;European Review for Medical and Pharmacological Sciences,2021
5. Worldmeter.com. COVID Live Update: 186,356,010 Cases and 4,026,894 Deaths from the Coronavirus [Internet]. 2021 [cited 2021 Nov 8]. Available from: https://www.worldometers.info/coronavirus/